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Rapid threshold switching dynamics of co-sputtered chalcogenide Ge_(15)Te_(85) device for selector application

机译:用于选择器应用的共溅射硫属化物GE_(85)TE_(85)装置的快速阈值切换动力学

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摘要

Threshold switching is a unique characteristic feature in amorphous chalcogenide materials that establishes stable and fast switching between a high resistance OFF state and a conductive ON state in the amorphous phase, envisaging the electronic nature of two-terminal ovonic threshold switch (OTS) selectors in vertically stackable cross-point memory arrays. In this paper, we demonstrate voltage-dependent nanosecond threshold switching dynamics and stable OFF-ON transitions of co-sputtered thin Ge15Te85 film devices using ultrafast time-resolved current-voltage measurements. The time-resolved measurement of device current upon the application of voltage pulse reveals a stable threshold switching and OFF-ON transient characteristics of OTS devices and the measured delay time is found to decrease to few nanoseconds upon increasing the amplitude of the applied voltage pulse and such OTS characteristics are found to be stable even above 60% of the high value of threshold voltage. These experimental results found to be consistent with analytical solutions and also demonstrate a systematic trend in the voltage dependent switching properties enabling ultrafast threshold switching characteristics suitable towards designing reliable and stable OTS selector devices.
机译:阈值切换是无定形硫属化物材料中的独特特征,在非晶相中在高电阻关闭状态和导电状态之间建立稳定快速的切换,设想垂直于两端纵向阈值开关(OTS)选择器的电子性质可堆叠交叉点存储器阵列。在本文中,我们展示了使用超快时间分辨电流测量的电压依赖性纳秒阈值切换动力学和稳定的共溅射薄GE15Te85薄膜器件的过渡。在施加电压脉冲时,器件电流的时间分辨率测量显示稳定的阈值切换和OTS器件的暂态特性,并且在增加施加的电压脉冲的幅度时,发现测量的延迟时间在增加幅度下降到少数纳秒。发现这种OTS特性均匀稳定,甚至高于阈值电压的高值的60%。这些实验结果发现与分析解决方案一致,并且还展示了电压依赖性开关性能的系统趋势,从而实现了适合设计可靠且稳定的OTS选择器装置的超快阈值切换特性。

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